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EXPERIMENTAL AND NUMERICAL STUDY OF SUPERSONIC RADIAL JET

机译:超音速射流的实验与数值研究

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When an axisymmetric underexpanded jet impinges on a flat plate perpendicularly, the feedback loop of the sound waves in and around the jet is known to cause the oscillation of the whole flow field. In this paper, the radial underexpaiided jet issuing from a slit nozzle which consists of two tubes, face to face each other, is studied experimentally and numerically. Such flow field can be considered as a simple model of the wall jet of the impinging jet on the plate. In the experimental photograph, it, is found that some shock rings appear around the nozzle and that the distortion and the deformation of the rings occur. They are considered to be caused by the sinusoidal oscillation of the jet and the motion of the vortices around the jet. Such oscillatory phenomena are shown by the computational results. Furthermore, the feedback mechanism of the radial jet is also discussed under the assumption of the axisymmetric flow field.
机译:当轴对称的膨胀不足的射流垂直撞击平板时,已知射流内部和周围的声波反馈回路会引起整个流场的振荡。本文通过实验和数值研究了由狭缝式喷嘴产生的径向射流不足的情况,狭缝式喷嘴由两个面对面的管子组成。可以将这种流场视为板上撞击射流的壁射流的简单模型。在实验照片中,发现一些冲击环出现在喷嘴周围,并且发生了环的变形和变形。它们被认为是由射流的正弦振荡和绕射流的涡旋运动引起的。计算结果表明了这种振荡现象。此外,在轴对称流场的假设下,还讨论了径向射流的反馈机制。

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